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An aqueous solution of sodium chloride is classified as a salt solution. It is formed by dissolving sodium chloride (NaCl) in water, which results in the formation of sodium ions (Na+) and chloride ions (Cl-) in the solution.
Potassium chloride dissociates into ions (K+ and Cl-) in aqueous solution, allowing for the movement of charged particles. This movement of ions enables the flow of electricity, making potassium chloride a conductor in aqueous solution.
it becomes ionic in aqueous solution
In an aqueous solution of calcium chloride, the ions present are Ca²⁺ (calcium) and Cl⁻ (chloride) in a 1:2 ratio. This means for every calcium ion, there are two chloride ions present in the solution.
In an aqueous solution of sodium chloride (NaCl), the ionic species present are sodium ions (Na+) and chloride ions (Cl-). Sodium chloride dissociates into its ions when dissolved in water, leading to the formation of these two ionic species.
Yes, strontium chloride (SrCl₂) is soluble in water and exists as an aqueous solution when dissolved. In this form, it dissociates into strontium ions (Sr²⁺) and chloride ions (Cl⁻). Thus, when SrCl₂ is added to water, it readily forms an aqueous solution.
The chemical formula of an aqueous solution of sodium chloride is NaCl(aq), indicating that sodium chloride has dissociated into sodium ions (Na⁺) and chloride ions (Cl⁻) in water.
If the solution that may contain chloride ions is aqueous, adding a solution of silver nitrate will cause a precipitate of silver chloride. (However, there are many other insoluble silver salts, so that this test is not specific to chloride.)
HClO is a weak acid so it will only partly dissociate into H+,Cl-, and most will stay as HClO.
Yes, MgCl2 can form an aqueous solution when it is dissolved in water. MgCl2 dissociates into magnesium (Mg2+) ions and chloride (Cl-) ions in water, forming an aqueous solution.
An aqueous solution of sodium chloride cannot be used to separate sodium from sodium chloride because both sodium and chloride ions are present in the solution. Sodium cannot be isolated from the solution without separate electrolysis techniques because it is also in the form of ions like chloride.
Ammonium chloride dissociates 100% into ions in solution. The ammonium ions interact with the hydroxide ions from the water removing them from the solution. This increases the concentration of hydrogen ions, increasing the acidity of the solution. We say that a solution of ammonium chloride is acidic by hydrolysis.